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Hematological Parameters in Hair Goats During and out of Breeding Season Hair Goats Seasonal Hematological Parameters | ||
Iranian Journal of Veterinary Medicine | ||
مقاله 2، دوره 17، شماره 2، تیر 2023، صفحه 113-118 اصل مقاله (719.63 K) | ||
نوع مقاله: Original Articles | ||
شناسه دیجیتال (DOI): 10.32598/ijvm.17.2.1005334 | ||
نویسندگان | ||
Tahir Karaşahi̇n* 1؛ Şükrü Dursun2؛ Neşe Hayat Aksoy3؛ Hüdai İpek1؛ Göktuğ Şentürk1 | ||
1Department of Physiology, Faculty of Veterinary Medicine, Aksaray University, Aksaray, Türkiye. | ||
2Department of Reproduction and Gynecology, Faculty of Veterinary Medicine, Aksaray University, Aksaray, Türkiye. | ||
3Department of Biochemistry, Faculty of Veterinary Medicine, Aksaray University, Aksaray, Türkiye. | ||
چکیده | ||
Background: The hair goat of Anatolia is a breed that has adapted to rugged and mountainous areas and is known to be very resistant to diseases. As the world faces the problem of climate change, we believe that knowing the hematological characteristics of hair goats will provide great benefits for goat breeding. Objectives: This study was performed to determine possible differences in the blood parameters of adult (male and female) hair goats during and out of the breeding season. Methods: For this purpose, blood samples were taken from clinically healthy adult male and female hair goats (n=36, 3-4 years old) in the spring and autumn seasons. Regarding the whole blood, white blood cell (WBC), red blood cell (RBC), hemoglobin (Hb), hematocrit (Hct), mean red blood cell volume (MCV), mean red blood cell hemoglobin (MCH), average red blood cell hemoglobin concentration (MCHC) and red blood cell distribution width (RDW) values were determined. Results: In the study, MCV values in males were not significantly (P≥0.05) different between spring and autumn, while all other parameters showed significant differences (P≤0.05). In females, WBC, RBC, Hb, Hct, and RDW blood values were higher in the autumn (estrus period) than in the spring (anestrus period), and the differences were found to be significant (P≤0.05). Comparing males and females between the estrus and anestrus seasons, WBC and MCHC were found to be significantly different (P≤0.05) between males and females in May. In contrast, the difference between other parameters was not significant. In October (estrus season), the MCV value was not significantly different between males and females; however, all other parameters were significantly different (P≤0.05). Conclusion: As a result, there were significant differences in hematological parameters of hair goats based on gender and the breeding season. | ||
کلیدواژهها | ||
Female؛ Hair goat؛ Male؛ Hematological parameters؛ Season | ||
اصل مقاله | ||
1. Introduction
2. Materials and Methods
3. Results
When the values of out of season (May) and breeding season (October) were compared, the MCV was not significantly different (P≥0.05), while all other parameters investigated differed significantly (P≤0.05). In females, MCV, MCH, and MCHC values were not significantly different (P≥0.05), while other parameters (WBC, RBC, Hb, Hct, and RDW) were significantly different (P≤0.05) (Table 2).
Comparing males and females in both out of season and the breeding season based on gender, WBC, and MCHC were found to be significantly (P≤0.05) different between males and females in May, whereas the differences between other parameters were not significant (P≥0.05). In October, all parameters except for MCV were significantly different between males and females (P≤0.05, Table 3).
4. Discussion
Ethical Considerations
Compliance with ethical guidelines
Funding
Authors' contributions
Conflict of interest
Acknowledgments
References Agrawal, A., Karim, S., Kumar, R., Sahoo, A., & John P. (2014). Sheep and goat production: basic differences, impact on climate and molecular tools for rumen microbiome study. International Journal of Current Microbiology and Applied Sciences, 3(1), 684-706. [Link] Antunović, Z., Marić, I., Klir, Ž., Šerić, V., Mioč, B., & Novoselec, J. (2019). Haemato-biochemical profile and acid-base status of Croatian spotted goats of different ages. Archives Animal Breeding, 62(2), 455–463. [DOI:10.5194/aab-62-455-2019] [PMID] [PMCID] Antunović, Z., Šperanda, M., Novoselec, J., Đidara, M., Mioč, B., Klir, Ž., & Samac, D. (2017). Blood metabolic profile and acid-base balance of dairy goats and their kids during lactation. Veterinarski Arhiv, 87(1), 43-55. [Link] Arfuso,F.,Fazio,F.,Rizzo,M.,Marafioti,S.,Zanghì,E. & Piccione,G.(2016). Factors Affecting the Hematological Parameters in Different Goat Breeds from Italy. Annals of Animal Science, 16(3) 743-757. [DOI:10.1515/aoas-2015-0094] Azab. ME., Abdel-Maksoud H.A. (1999). Changes in some hematological and biochemical parameters during prepartum and postpartum periods in female Baladi goats. Small Ruminant Research, 34(1), 77-85. [DOI:10.1016/S0921-4488(99)00049-8] Chaudhari, S., Mshelia G. (2006). Evaluation of the haematologic values of bitches in Northern Nigeria for the staging of pregnancy. Pakistan Journal of Biological Sciences, 9: 310-312. [DOI:10.3923/pjbs.2006.310.312] Çelik, Ö. Y., İrak, K. & Akgül, G. (2019). Effect of sex on some biochemical and hematological parameters in healthy boer x hair goat crossbreed. Kocatepe Veterinary Journal, 12(1), 45-51. [DOI:10.30607/kvj.471174] Daramola, J., Adeloye, A., Fatoba, T., Soladoye A. (2005). Haematological and biochemical parameters of West African Dwarf goats. Livestock Research for Rural Development, 17(8), 95. [Link] Eli, B. (2012). Reference values for hematological and biochemical parameters in Saanen goats breeding in Afyonkarahisar province. Kocatepe Veterinary Journal, 5(1), 7-11. [Link] Ghasemzadeh-nava, H., Bahrami, M., Akbarinejad, V., & Alavi Tabatabaee, S. A. (2021). Conception rate of pre-synchronization and two short term heat-synch programs using two doses of PGF2α in lactating holstein dairy cows. Iranian Journal of Veterinary Medicine, 15(4), 423-431. [DOI: 10.22059/ijvm.2021.319206.1005162] Hall, J. E., & Hall, M. E. (2020). Guyton and Hall textbook of medical physiology e-Book. Amsterdam: Elsevier Health Sciences. [Link] Iriadam, M. (2007). Variation in certain hematological and biochemical parameters during the peri-partum period in Kilis does. Small Ruminant Research, 73(1-3), 54-57. [DOI:10.1016/j.smallrumres.2006.11.001] Jaworek, A.K., Szepietowski J.C., Hałubiec P, Wojas-Pelc A, Jaworek J. (2021). Melatonin as an antioxidant and immunomodulator in atopic dermatitis—a new look on an old story: A review. Antioxidants, 10(8), 1179. [DOI:10.3390/antiox10081179] Karaþahin, T., Aksoy, N.H., Haydardedeoðlu, E.A., Dursun, P., Bulut, G., Çamkerten, G., Çamkerten, Ý.R., İlgün R. (2019). Serum cholesterol levels in hair goats of Aksaray region. Indian Journal of Animal Research, 53(1), 63-66. [DOI:10.18805/ijar.B-878] Kaveh Baghbadorani, M., Mehrzad, J., Vodjgani, M., Khosravi, A., & Akbarinejad, V. (2022). Evaluation of biochemical and hematological parameters in postpartum holstein dairy cows following supplementation of immunofin® herbal extract. Iranian Journal of Veterinary Medicine, 16(3), 274-287. [DOI:10.22059/ijvm.2022.334623.1005210] Kaywanloo, M., Ahmadi Hamedani, M., Jebeli Javan, A., Emadi Chashmi, H., & Rakhshani Zabol, F. (2022). Effect of parenteral vitamin d3 supplementation in several doses during a six-day period on total antioxidant capacity in healthy holstein bulls. Iranian Journal of Veterinary Medicine, 16(1), 81-88. [DOI:10.22059/ijvm.2021.314273.1005142] Kovats S. (2012). Estrogen receptors regulate an inflammatory pathway of dendritic cell differentiation: Mechanisms and implications for immunity. Hormones and behavior, 62(3), 254–262. [DOI:10.1016/j.yhbeh.2012.04.011] [PMID] [PMCID] Manat, T. D., Chaudhary, S. S., Singh, V. K., Patel, S. B., & Puri, G. (2016). Hematobiochemical profile in surti goats during post-partum period. Veterinary world, 9(1), 19–24. [DOI:10.14202/vetworld.2016.19-24] [PMID] [PMCID] Mohammed, S. A., Razzaque, M. A., Omar, A. E., Albert, S., & Al-Gallaf, W. M. (2016). Biochemical and hematological profile of different breeds of goat maintained under intensive production system. African Journal of Biotechnology, 15(24), 1253-1257. [DOI:10.5897/AJB2016.15362] Nagy, O., Tothova, C., Nagyova, V., Kovac, G., & Posivak J. (2014). Changes in the serum protein electrophoretic pattern in lambs during the first month of life. Acta Veterinaria Brno, 83(3), 187-193. [DOI:10.2754/avb201483030187] Njidda, A., Hassan, I. T., & Olatunji, E. A. (2013). Haematological and biochemical parameters of goats of semi arid environment fed on natural grazing rangeland of Northern Nigeria. Journal of Agriculture and Veterinary Sciences, 3(2), 1-8. [DOI:10.9790/2380-0320108] Nowak, J., Borkowska, B., & Pawlowski, B. (2016). Leukocyte changes across menstruation, ovulation, and mid-luteal phase and association with sex hormone variation. American Journal of Human Biology, 28(5), 721–728. [DOI:10.1002/ajhb.22856] [PMID] Oliveira, W. D. C. D., Silva, T. P. D., Araujo, M. J. D., Edvan, R. L., Oliveira, R. L., & Bezerra L. R. (2019). Changes in hematological biomarkers of nellore cows at different reproductive stages. Acta Scientiarum Animal Sciences, 41, 1-7. [DOI:10.4025/actascianimsci.v41i1.45725] Omontese, B. O., Ahmed, H. A., Salisu, M. D., Alao, R., & Umar, M. S. (2017). Changes in haematological parameters following oestrus synchronization using Fluorogestone Acetate (Fga) intravaginal sponge in red sokoto does. Journal of Animal Production Ressearch, 29(1):83-87. [Link] Opara, M. N., Udevi, N., & Okoli, I. C. (2010). Haematological parameters and blood chemistry of apparently healthy West African Dwarf (Wad) goats in Owerri, South Eastern Nigeria. New York Science Journal, 3(8), 68-72. [Link] Piccione, G., Casella, S., Lutri, L., Vazzana, I., Ferrantelli, V., & Caola, G. (2010). Reference values for some haematological, haematochemical, and electrophoretic parameters in the Girgentana goat. Turkish Journal of Veterinary and Animal Sciences, 34(2), 197-204. [DOI:10.3906/vet-0902-1] Pradhan B. C. (2016). Evaluation of haematological and biochemical parameters of goats of central Odisha environment fed on natural grazing land of Odisha, India. The Pharma Innovation 5(5): 83-90. [Link] Redlberger, S., Fischer, S., Köhler, H., Diller, R., & Reinhold, P. (2017). Age-dependent physiological dynamics in acid-base balance, electrolytes, and blood metabolites in growing goats. Veterinary Journal, 229, 45–52. [DOI:10.1016/j.tvjl.2017.10.017] [PMID] Silanikove N. (2000). The physiological basis of adaptation in goats to harsh environments. Small Ruminant Research, 35(3), 181-193. [DOI:10.1016/S0921-4488(99)00096-6] Todini, L., Terzano, G. M., Borghese, A., Debenedetti, A., & Malfatti, A. (2011). Plasma melatonin in domestic female Mediterranean sheep (comisana breed) and goats (Maltese and Red Syrian). Research in veterinary science, 90(1), 35–39. [DOI:10.1016/j.rvsc.2010.05.013] [PMID] Waziri, M. A., Ribadu, A. Y., & Sivachelvan, N. (2010). Changes in the serum proteins, hematological and some serum biochemical profiles in the gestation period in the Sahel goats. Veterinarski Arhiv, 80(2): 215-224. [Link] | ||
مراجع | ||
Agrawal, A., Karim, S., Kumar, R., Sahoo, A., & John P. (2014). Sheep and goat production: basic differences, impact on climate and molecular tools for rumen microbiome study. International Journal of Current Microbiology and Applied Sciences, 3(1), 684-706. [Link] Antunović, Z., Marić, I., Klir, Ž., Šerić, V., Mioč, B., & Novoselec, J. (2019). Haemato-biochemical profile and acid-base status of Croatian spotted goats of different ages. Archives Animal Breeding, 62(2), 455–463. [DOI:10.5194/aab-62-455-2019] [PMID] [PMCID] Antunović, Z., Šperanda, M., Novoselec, J., Đidara, M., Mioč, B., Klir, Ž., & Samac, D. (2017). Blood metabolic profile and acid-base balance of dairy goats and their kids during lactation. Veterinarski Arhiv, 87(1), 43-55. [Link] Arfuso,F.,Fazio,F.,Rizzo,M.,Marafioti,S.,Zanghì,E. & Piccione,G.(2016). Factors Affecting the Hematological Parameters in Different Goat Breeds from Italy. Annals of Animal Science, 16(3) 743-757. [DOI:10.1515/aoas-2015-0094] Azab. ME., Abdel-Maksoud H.A. (1999). Changes in some hematological and biochemical parameters during prepartum and postpartum periods in female Baladi goats. Small Ruminant Research, 34(1), 77-85. [DOI:10.1016/S0921-4488(99)00049-8] Chaudhari, S., Mshelia G. (2006). Evaluation of the haematologic values of bitches in Northern Nigeria for the staging of pregnancy. Pakistan Journal of Biological Sciences, 9: 310-312. [DOI:10.3923/pjbs.2006.310.312] Çelik, Ö. Y., İrak, K. & Akgül, G. (2019). Effect of sex on some biochemical and hematological parameters in healthy boer x hair goat crossbreed. Kocatepe Veterinary Journal, 12(1), 45-51. [DOI:10.30607/kvj.471174] Daramola, J., Adeloye, A., Fatoba, T., Soladoye A. (2005). Haematological and biochemical parameters of West African Dwarf goats. Livestock Research for Rural Development, 17(8), 95. [Link] Eli, B. (2012). Reference values for hematological and biochemical parameters in Saanen goats breeding in Afyonkarahisar province. Kocatepe Veterinary Journal, 5(1), 7-11. [Link] Ghasemzadeh-nava, H., Bahrami, M., Akbarinejad, V., & Alavi Tabatabaee, S. A. (2021). Conception rate of pre-synchronization and two short term heat-synch programs using two doses of PGF2α in lactating holstein dairy cows. Iranian Journal of Veterinary Medicine, 15(4), 423-431. [DOI: 10.22059/ijvm.2021.319206.1005162] Hall, J. E., & Hall, M. E. (2020). Guyton and Hall textbook of medical physiology e-Book. Amsterdam: Elsevier Health Sciences. [Link] Iriadam, M. (2007). Variation in certain hematological and biochemical parameters during the peri-partum period in Kilis does. Small Ruminant Research, 73(1-3), 54-57. [DOI:10.1016/j.smallrumres.2006.11.001] Jaworek, A.K., Szepietowski J.C., Hałubiec P, Wojas-Pelc A, Jaworek J. (2021). Melatonin as an antioxidant and immunomodulator in atopic dermatitis—a new look on an old story: A review. Antioxidants, 10(8), 1179. [DOI:10.3390/antiox10081179] Karaþahin, T., Aksoy, N.H., Haydardedeoðlu, E.A., Dursun, P., Bulut, G., Çamkerten, G., Çamkerten, Ý.R., İlgün R. (2019). Serum cholesterol levels in hair goats of Aksaray region. Indian Journal of Animal Research, 53(1), 63-66. [DOI:10.18805/ijar.B-878] Kaveh Baghbadorani, M., Mehrzad, J., Vodjgani, M., Khosravi, A., & Akbarinejad, V. (2022). Evaluation of biochemical and hematological parameters in postpartum holstein dairy cows following supplementation of immunofin® herbal extract. Iranian Journal of Veterinary Medicine, 16(3), 274-287. [DOI:10.22059/ijvm.2022.334623.1005210] Kaywanloo, M., Ahmadi Hamedani, M., Jebeli Javan, A., Emadi Chashmi, H., & Rakhshani Zabol, F. (2022). Effect of parenteral vitamin d3 supplementation in several doses during a six-day period on total antioxidant capacity in healthy holstein bulls. Iranian Journal of Veterinary Medicine, 16(1), 81-88. [DOI:10.22059/ijvm.2021.314273.1005142] Kovats S. (2012). Estrogen receptors regulate an inflammatory pathway of dendritic cell differentiation: Mechanisms and implications for immunity. Hormones and behavior, 62(3), 254–262. [DOI:10.1016/j.yhbeh.2012.04.011] [PMID] [PMCID] Manat, T. D., Chaudhary, S. S., Singh, V. K., Patel, S. B., & Puri, G. (2016). Hematobiochemical profile in surti goats during post-partum period. Veterinary world, 9(1), 19–24. [DOI:10.14202/vetworld.2016.19-24] [PMID] [PMCID] Mohammed, S. A., Razzaque, M. A., Omar, A. E., Albert, S., & Al-Gallaf, W. M. (2016). Biochemical and hematological profile of different breeds of goat maintained under intensive production system. African Journal of Biotechnology, 15(24), 1253-1257. [DOI:10.5897/AJB2016.15362] Nagy, O., Tothova, C., Nagyova, V., Kovac, G., & Posivak J. (2014). Changes in the serum protein electrophoretic pattern in lambs during the first month of life. Acta Veterinaria Brno, 83(3), 187-193. [DOI:10.2754/avb201483030187] Njidda, A., Hassan, I. T., & Olatunji, E. A. (2013). Haematological and biochemical parameters of goats of semi arid environment fed on natural grazing rangeland of Northern Nigeria. Journal of Agriculture and Veterinary Sciences, 3(2), 1-8. [DOI:10.9790/2380-0320108] Nowak, J., Borkowska, B., & Pawlowski, B. (2016). Leukocyte changes across menstruation, ovulation, and mid-luteal phase and association with sex hormone variation. American Journal of Human Biology, 28(5), 721–728. [DOI:10.1002/ajhb.22856] [PMID] Oliveira, W. D. C. D., Silva, T. P. D., Araujo, M. J. D., Edvan, R. L., Oliveira, R. L., & Bezerra L. R. (2019). Changes in hematological biomarkers of nellore cows at different reproductive stages. Acta Scientiarum Animal Sciences, 41, 1-7. [DOI:10.4025/actascianimsci.v41i1.45725] Omontese, B. O., Ahmed, H. A., Salisu, M. D., Alao, R., & Umar, M. S. (2017). Changes in haematological parameters following oestrus synchronization using Fluorogestone Acetate (Fga) intravaginal sponge in red sokoto does. Journal of Animal Production Ressearch, 29(1):83-87. [Link] Opara, M. N., Udevi, N., & Okoli, I. C. (2010). Haematological parameters and blood chemistry of apparently healthy West African Dwarf (Wad) goats in Owerri, South Eastern Nigeria. New York Science Journal, 3(8), 68-72. [Link] Piccione, G., Casella, S., Lutri, L., Vazzana, I., Ferrantelli, V., & Caola, G. (2010). Reference values for some haematological, haematochemical, and electrophoretic parameters in the Girgentana goat. Turkish Journal of Veterinary and Animal Sciences, 34(2), 197-204. [DOI:10.3906/vet-0902-1] Pradhan B. C. (2016). Evaluation of haematological and biochemical parameters of goats of central Odisha environment fed on natural grazing land of Odisha, India. The Pharma Innovation 5(5): 83-90. [Link] Redlberger, S., Fischer, S., Köhler, H., Diller, R., & Reinhold, P. (2017). Age-dependent physiological dynamics in acid-base balance, electrolytes, and blood metabolites in growing goats. Veterinary Journal, 229, 45–52. [DOI:10.1016/j.tvjl.2017.10.017] [PMID] Silanikove N. (2000). The physiological basis of adaptation in goats to harsh environments. Small Ruminant Research, 35(3), 181-193. [DOI:10.1016/S0921-4488(99)00096-6] Todini, L., Terzano, G. M., Borghese, A., Debenedetti, A., & Malfatti, A. (2011). Plasma melatonin in domestic female Mediterranean sheep (comisana breed) and goats (Maltese and Red Syrian). Research in veterinary science, 90(1), 35–39. [DOI:10.1016/j.rvsc.2010.05.013] [PMID] Waziri, M. A., Ribadu, A. Y., & Sivachelvan, N. (2010). Changes in the serum proteins, hematological and some serum biochemical profiles in the gestation period in the Sahel goats. Veterinarski Arhiv, 80(2): 215-224. [Link] | ||
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